Therefore, the gains in the various parts of the Leptin "adipostat" NFB loop are not very high. Therefore, there will be a significant variation in weight change vs Calorie change, and there will be significant variations in the variation due to loop gain variations from person to person.

Insulin Resistance makes the slopes of the above input/output transfer functions shallower, reducing the gain in the system. This increases the variation in weight change vs Calorie change. For ways to reduce Insulin Resistance, see Insulin Resistance: Solutions to problems.

*In case anyone thinks that I've made the numbers up, here's the maths:-
Current in/out of the - terminal of the Op-Amp = 0.
∴ IR1 = IR2
I set R1 = R2 to keep the maths simple. By Ohm's Law, V = I * R.
∴ VR1 = VR2
With a 0V input:-
All currents & voltages = 0.

About Me

I have a B.Sc.(Hons) in Electronic Engineering but no qualifications in Diet, Nutrition & Fitness, which is why I back-up what I write with links to high-quality evidence.

You can email me at
nigel.kinbrum@entee'ellworld.com
(say it!).

My suggestions must ALWAYS be checked by your Pharmacist/GP first, in case of contraindications with other medical conditions or medications that I don't know about. My suggestions are adjuncts to, NOT replacements for medication(s).

If symptoms improve, ask your GP about a reduction in medication(s), if it's/they're causing you problems.

Cheers, Nigel Kinbrum B.Sc.(Hons)Eng.

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